Variation in Physiological Traits of Blackgram (Vigna mungo L.) Genotypes under High Temperature Stress

N. Pavithra, K. Jayalalitha, T. Sujatha, N. Harisatyanarayana, N. J. Lakshmi, V. Roja
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Abstract

Background: Blackgram is one of the important short duration pulse crop which is sensitive to high temperatures. The rising global temperatures are threatening the yield of blackgram by altering the physiological processes at cellular level. Keeping this in view, the present investigation was carried out for better understanding of genotypic variability and the physiological mechanisms governing heat stress tolerance which can help in identifying heat tolerant blackgram genotypes that can yield better under climate change scenarios. Methods: Thirty blackgram genotypes selected from temperature induction response technique were evaluated for physiological efficiency under natural high temperature conditions during summer, 2022 and 2023. Field experiment was conducted at Agricultural College Farm, Acharya N.G Ranga Agricultural University, Agricultural College, Bapatla. Physiological and yield parameters were recorded at flowering and the data were analyzed statistically and pooled. Result: Significant genetic variability was observed among the blackgram genotypes with respect to all the physiological traits under high temperature stress conditions. Among the 30 genotypes tested for thermotolerance, the genotypes TBG-129, PU-1804, LBG-1015, PU-31 and TBG-104 were found to withstand high temperature stress at reproductive stage by maintaining higher total chlorophyll, carotenoids, chlorophyll stability index, total biomass production, cooler canopies resulting into higher canopy temperature depression, less membrane injury index values and higher yield. Correlation analysis revealed a strong positive correlation for all the physiological traits with seed yield except membrane injury index under heat stress conditions. The PCA results revealed considerable variability among the traits accounting for 82.65% of total variability. The genotypes TBG-129, PU-1804, LBG-1015 and TBG-104 can be potentially used as donors in the breeding programmes for the development of heat tolerant genotypes.
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高温胁迫下黑木耳(Vigna mungo L.)基因型生理特征的变异
背景:黑麦是重要的短时脉冲作物之一,对高温敏感。全球气温不断升高,改变了细胞水平的生理过程,从而威胁到黑gram的产量。有鉴于此,本研究旨在更好地了解耐热胁迫的基因型变异和生理机制,这有助于确定耐热的黑gram基因型,从而在气候变化情况下获得更好的产量。方法:在 2022 年和 2023 年夏季的自然高温条件下,对从温度诱导响应技术中筛选出的 30 个黑鲩基因型进行了生理效率评估。田间试验在巴帕特拉的阿查里亚-N.G-兰加农业大学农学院农场进行。记录了开花期的生理参数和产量参数,并对数据进行了统计和汇总分析。结果在高温胁迫条件下,黑豚草基因型的所有生理性状都存在显著的遗传变异。在耐高温性测试的 30 个基因型中,发现基因型 TBG-129、PU-1804、LBG-1015、PU-31 和 TBG-104 在生育期能承受高温胁迫,能保持较高的叶绿素总量、类胡萝卜素、叶绿素稳定指数、生物量总产量,树冠温度较低,导致树冠温度降低,膜损伤指数值较低,产量较高。相关分析表明,在热胁迫条件下,除膜损伤指数外,所有生理性状均与种子产量呈强正相关。PCA 结果显示,各性状之间的变异性相当大,占总变异性的 82.65%。基因型 TBG-129、PU-1804、LBG-1015 和 TBG-104 可作为育种计划中的供体,用于开发耐热基因型。
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